Fukusumi Yoshiyasu, Miyauchi Naoko, Hashimoto Taeko, Saito Akira, Kawachi Hiroshi
Yoshiyasu Fukusumi, Naoko Miyauchi, Taeko Hashimoto, Akira Saito, Hiroshi Kawachi, Department of Cell Biology, Institute of Nephrology, Niigata University Graduate School of Medical and Dental Sciences, Niigata 951-8510, Japan.
World J Nephrol. 2014 Aug 6;3(3):77-84. doi: 10.5527/wjn.v3.i3.77.
The slit diaphragm bridging the neighboring foot processes functions as a final barrier of glomerular capillary wall for preventing the leak of plasma proteins into primary urine. It is now accepted that the dysfunction of the sit diaphragm contributes to the development of proteinuria in several glomerular diseases. Nephrin, a gene product of NPHS1, a gene for a congenital nephrotic syndrome of Finnish type, constitutes an extracellular domain of the slit diaphragm. Podocin was identified as a gene product of NPHS2, a gene for a familial steroid-resistant nephrotic syndrome of French. Podocin binds the cytoplasmic domain of nephrin. After then, CD2 associated protein, NEPH1 and transient receptor potential-6 were also found as crucial molecules of the slit diaphragm. In order to explore other novel molecules contributing to the development of proteinuria, we performed a subtraction hybridization assay with a normal rat glomerular RNA and a glomerular RNA of rats with a puromycin aminonucleoside nephropathy, a mimic of a human minimal change type nephrotic syndrome. Then we have found that synaptic vesicle protein 2B, ephrin-B1 and neurexin were already downregulated at the early stage of puromycin aminonucleoside nephropathy, and that these molecules were localized close to nephrin. It is conceivable that these molecules are the slit diaphragm associated molecules, which participate in the regulation of the barrier function. These molecules could be targets to establish a novel therapy for nephrotic syndrome.
连接相邻足细胞突起的裂孔隔膜作为肾小球毛细血管壁的最后一道屏障,可防止血浆蛋白漏入原尿。目前认为,裂孔隔膜功能障碍在多种肾小球疾病蛋白尿的发生中起作用。NPHS1(芬兰型先天性肾病综合征相关基因)的基因产物Nephrin构成裂孔隔膜的细胞外结构域。Podocin被鉴定为NPHS2(法国型家族性类固醇抵抗性肾病综合征相关基因)的基因产物。Podocin与Nephrin的细胞质结构域结合。此后,CD2相关蛋白、NEPH1和瞬时受体电位6也被发现是裂孔隔膜的关键分子。为了探索导致蛋白尿发生的其他新分子,我们用正常大鼠肾小球RNA与嘌呤霉素氨基核苷肾病大鼠(人类微小病变型肾病综合征的模型)的肾小球RNA进行了消减杂交分析。然后我们发现,突触小泡蛋白2B、ephrin-B1和神经细胞黏附分子在嘌呤霉素氨基核苷肾病早期就已下调,且这些分子定位于靠近Nephrin的位置。可以设想,这些分子是与裂孔隔膜相关的分子,参与屏障功能的调节。这些分子可能成为建立肾病综合征新疗法的靶点。